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首页> 外文期刊>Clinical neurophysiology >Assessing interactions of linear and nonlinear neuronal sources using MEG beamformers: a proof of concept.
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Assessing interactions of linear and nonlinear neuronal sources using MEG beamformers: a proof of concept.

机译:使用MEG波束形成器评估线性和非线性神经元源的相互作用:概念证明。

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摘要

OBJECTIVE: This study aimed to explore methods of assessing interactions between neuronal sources using MEG beamformers. However, beamformer methodology is based on the assumption of no linear long-term source interdependencies [VanVeen BD, vanDrongelen W, Yuchtman M, Suzuki A. Localization of brain electrical activity via linearly constrained minimum variance spatial filtering. IEEE Trans Biomed Eng 1997;44:867-80; Robinson SE, Vrba J. Functional neuroimaging by synthetic aperture magnetometry (SAM). In: Recent advances in Biomagnetism. Sendai: Tohoku University Press; 1999. p. 302-5]. Although such long-term correlations are not efficient and should not be anticipated in a healthy brain [Friston KJ. The labile brain. I. Neuronal transients and nonlinear coupling. Philos Trans R Soc Lond B Biol Sci 2000;355:215-36], transient correlations seem to underlie functional cortical coordination [Singer W. Neuronal synchrony: a versatile code for the definition of relations? Neuron 1999;49-65; Rodriguez E, George N, Lachaux J, Martinerie J, Renault B, Varela F. Perception's shadow: long-distance synchronization of human brain activity. Nature 1999;397:430-3; Bressler SL, Kelso J. Cortical coordination dynamics and cognition. Trends Cogn Sci 2001;5:26-36]. METHODS: Two periodic sources were simulated and the effects of transient source correlation on the spatial and temporal performance of the MEG beamformer were examined. Subsequently, the interdependencies of the reconstructed sources were investigated using coherence and phase synchronization analysis based on Mutual Information. Finally, two interacting nonlinear systems served as neuronal sources and their phase interdependencies were studied under realistic measurement conditions. RESULTS: Both the spatial and the temporal beamformer source reconstructions were accurate as long as the transient source correlation did not exceed 30-40 percent of the duration of beamformer analysis. In addition, the interdependencies of periodic sources were preserved by thebeamformer and phase synchronization of interacting nonlinear sources could be detected. CONCLUSIONS: MEG beamformer methods in conjunction with analysis of source interdependencies could provide accurate spatial and temporal descriptions of interactions between linear and nonlinear neuronal sources. SIGNIFICANCE: The proposed methods can be used for the study of interactions between neuronal sources.
机译:目的:本研究旨在探索使用MEG波束形成器评估神经源之间相互作用的方法。但是,波束形成器方法是基于没有线性长期源相互依赖性的假设[VanVeen BD,vanDrongelen W,Yuchtman M,SuzukiA。通过线性约束的最小方差空间滤波对脑电活动进行定位。 IEEE Trans Biomed Eng 1997; 44:867-80; Robinson SE,Vrba J.通过合成孔径磁强计(SAM)进行功能性神经成像。于:生物磁学的最新进展。仙台:东北大学出版社; 1999。 302-5]。尽管这种长期的相关性并不有效,并且在健康的大脑中也不应该被预期[Friston KJ。大脑不稳定。一,神经元瞬态和非线性耦合。 Philos Trans R Soc Lond B Biol Sci 2000; 355:215-36],瞬时相关似乎是功能性皮层协调的基础[歌手W.神经元同步:关系定义的通用代码? Neuron 1999; 49-65; Rodriguez E,George N,Lachaux J,Martinerie J,Renault B,Varela F.感知的影子:人类大脑活动的长距离同步。自然1999; 397:430-3; Bressler SL,Kelso J.皮层协调动力学和认知。趋势Cogn Sci 2001; 5:26-36]。方法:模拟了两个周期性源,并研究了瞬态源相关性对MEG波束形成器的时空性能的影响。随后,使用基于互信息的相干性和相位同步分析研究了重构源的相互依赖性。最后,在实际测量条件下研究了两个相互作用的非线性系统作为神经源,并研究了它们的相位依赖性。结果:空间和时间波束形成器源重构都是准确的,只要瞬变源相关性不超过波束形成器分析持续时间的30-40%。此外,通过波束形成器可以保持周期性光源的相互依赖性,并且可以检测相互作用的非线性光源的相位同步。结论:MEG波束形成器方法结合源相互依赖性分析可以提供线性和非线性神经源之间相互作用的准确时空描述。意义:所提出的方法可用于研究神经源之间的相互作用。

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